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From quantum foundations, to spontaneous quantum gravity: an overview of the new theory
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Spontaneous localisation is a falsifiable dynamical mechanism which modifies quantum mechanics, and explains the absence of position superpositions in the macroscopic world. However, this is an ad hoc phenomenological proposal. Adler's theory of trace dynamics, working on a flat Minkowski space-time, derives quantum (field) theory, and spontaneous localisation, as a thermodynamic approximation to an underlying non-commutative matrix dynamics. We describe how to incorporate gravity into trace dynamics, by using ideas from Connes' non-commutative geometry programme. This leads us to a new quantum theory of gravity, from which we can predict spontaneous localisation, and give an estimate of the Bekenstein-Hawking entropy of a Schwarzschild black hole.
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Black hole entropy from trace dynamics and non-commutative geometry
A speculative calculation that recovers black hole entropy by identifying the trace-dynamics partition function result with the Euclidean gravitational action, after several assumptions that make the microstate count cancel.
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